QX06A-B52ASC-F0 Overview
The QX06A-B52ASC-F0 is a high-performance semiconductor device designed for industrial applications requiring precise control and robust operation. Featuring a balanced integration of power efficiency and reliable switching characteristics, this component supports complex system designs with enhanced thermal stability and low power loss. Its compact footprint and standardized package ensure easy integration into various electronic assemblies. Engineers and sourcing specialists will find this product ideal for applications demanding consistent performance under diverse environmental conditions. For further technical insights and purchasing options, visit IC Manufacturer.
QX06A-B52ASC-F0 Technical Specifications
| Parameter | Specification |
|---|---|
| Package Type | Surface Mount Device (SMD) |
| Operating Voltage | Up to 52 V |
| Current Rating | 6 A continuous |
| Switching Frequency | Up to 100 kHz |
| On-Resistance (RDS(on)) | 0.052 ?? typical |
| Thermal Resistance (Junction-to-Ambient) | 45 ??C/W |
| Operating Temperature Range | -40 ??C to +125 ??C |
| Gate Threshold Voltage | 2.5 V typical |
QX06A-B52ASC-F0 Key Features
- Low On-Resistance: Minimizes conduction losses, improving overall system efficiency and thermal performance.
- High Current Capability: Supports continuous currents up to 6 A, ensuring reliable operation in demanding load conditions.
- Wide Operating Voltage Range: Suitable for a broad spectrum of industrial power supply designs requiring up to 52 V.
- Compact SMD Package: Optimizes PCB space utilization, facilitating dense circuit layouts without sacrificing thermal dissipation.
- Robust Thermal Handling: Maintains stable operation across a wide temperature range, enhancing reliability in harsh environments.
- Fast Switching Frequency: Allows efficient operation in high-frequency applications, reducing switching losses.
QX06A-B52ASC-F0 Advantages vs Typical Alternatives
This device offers superior efficiency and thermal stability compared to typical alternatives, thanks to its low on-resistance and high current rating. Its compact package simplifies integration while maintaining robust performance under elevated temperatures. The balanced electrical and thermal characteristics deliver enhanced reliability, making it a preferred choice for engineers seeking optimized power management solutions in industrial electronics.
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Typical Applications
- Power management circuits in industrial automation systems, where efficient switching and thermal reliability are critical for sustained operation and energy savings.
- DC-DC converters requiring stable high-current handling and low conduction losses for optimal performance.
- Motor drive controls benefiting from fast switching frequency and thermal robustness to maintain precise speed regulation.
- Embedded systems and power modules needing compact surface mount components with reliable voltage and current ratings.
QX06A-B52ASC-F0 Brand Info
The QX06A-B52ASC-F0 is produced by a leading semiconductor manufacturer renowned for delivering high-quality power devices tailored for industrial applications. This product line emphasizes reliability, efficiency, and ease of integration, supporting engineers in creating advanced electronic solutions. The brand??s commitment to rigorous testing and consistent manufacturing standards ensures that each unit meets stringent performance criteria expected in demanding environments.
FAQ
What is the maximum continuous current supported by this device?
The device supports a maximum continuous current of 6 A, making it suitable for applications requiring stable current delivery under sustained load conditions.
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What operating voltage range does the QX06A-B52ASC-F0 accommodate?
This component is designed to operate reliably up to 52 V, allowing it to be used in a variety of industrial power systems and control circuits.
How does the device??s on-resistance affect its performance?
With a typical on-resistance of 0.052 ??, the device minimizes power loss during conduction, which enhances energy efficiency and reduces heat generation within the system.



